首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Proton Probability Distribution in the O center dot center dot center dot H center dot center dot center dot O Low-Barrier Hydrogen Bond: A Combined Solid-State NMR and Quantum Chemical Computational Study of Dibenzoylmethane and Curcumin
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Proton Probability Distribution in the O center dot center dot center dot H center dot center dot center dot O Low-Barrier Hydrogen Bond: A Combined Solid-State NMR and Quantum Chemical Computational Study of Dibenzoylmethane and Curcumin

机译:O中心点中心点中心点H中心点中心点中心点O中的质子概率分布低势垒氢键:二苯甲酰甲烷和姜黄素的固态NMR和量子化学计算的组合

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We report a combined solid-state (H-1, H-2, C-13,O-17) NMR and plane-wave density functional theory (DFT) computational study of the O center dot center dot center dot H center dot center dot center dot O low-barrier hydrogen bonds (LBHBs) in two 1,3-diketone compounds: dibenzoyl-methane (1) and curcumin (2). In the solid state, both 1 and 2 exist in the cis-keto-enol tautomeric form, each exhibiting an intramolecular LBHB with a short O center dot center dot center dot O distance (2.435 angstrom in 1 and 2.455 angstrom in 2). Whereas numerous experimental (structural and spectroscopic) and computational studies have been reported for the enol isomers of 1,3-diketones, a unified picture about the proton location within an LBHB is still lacking. This work reports for the first time the solid-state O-17 NMR data for the O center dot center dot center dot H center dot center dot center dot O LBHBs in 1,3-diketones. The central conclusion of this work is that detailed information about the probability density distribution of the proton (nuclear zero point motion) across an LBHB can be obtained from a combination of solid-state NMR and plane-wave DFT computations (both NMR parameter calculations and ab initio molecular dynamics simulations). We propose that the precise proton probability distribution across an LBHB should provide a common basis on which different and sometimes seemingly contradicting experimental results obtained from complementary techniques, such as X-ray diffraction, neutron diffraction, and solid-state NMR, can be reconciled.
机译:我们报告了O中心点中心点中心点中心点H中心点中心的固态(H-1,H-2,C-13,O-17)NMR和平面波密度泛函理论(DFT)的组合计算研究点中心点O在两个1,3-二酮化合物中的低势垒氢键(LBHBs):二苯甲酰甲烷(1)和姜黄素(2)。在固态下,1和2均以顺式-烯醇式互变异构体形式存在,每个分子内的LBHB的O中心点中心点中心点中心点O距离都很短(1处为2.435埃,2处为2.455埃)。尽管已报道了有关1,3-二酮烯醇异构体的大量实验(结构和光谱学)和计算研究,但仍缺乏有关LBHB中质子位置的统一信息。这项工作首次报告了1,3-二酮中O中心点中心点中心点H中心点中心点中心点LBHBs的固态O-17 NMR数据。这项工作的主要结论是,可以通过固态NMR和平面波DFT计算(NMR参数计算和NMR结合)获得有关LBHB上质子概率密度分布(核零点运动)的详细信息。从头算分子动力学模拟)。我们认为,LBHB上精确的质子概率分布应该提供一个共同的基础,在该基础上可以协调从补充技术(例如X射线衍射,中子衍射和固态NMR)获得的不同的,有时看似矛盾的实验结果。

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